Menzer
David Menzer, Boxford, MA US
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20100327927 | METHOD AND SYSTEM FOR CONTROLLING RADIO FREQUENCY POWER - A method for controlling pulsed power that includes measuring a first pulse of power from a power amplifier to obtain data. The method also includes generating a first signal to adjust a second pulse of delivered power, the first signal correlated to the data to minimize a power difference between a power set point and a substantially stable portion of the second pulse. The method also includes generating a second signal to adjust the second pulse of delivered power, the second signal correlated to the data to minimize an amplitude difference between a peak of the second pulse and the substantially stable portion of the second pulse. | 12-30-2010 |
20140306742 | Method and System for Controlling Radio Frequency Power - A method for controlling pulsed power that includes measuring a first pulse of power from a power amplifier to obtain data. The method also includes generating a first signal to adjust a second pulse of delivered power, the first signal correlated to the data to minimize a power difference between a power set point and a substantially stable portion of the second pulse. The method also includes generating a second signal to adjust the second pulse of delivered power, the second signal correlated to the data to minimize an amplitude difference between a peak of the second pulse and the substantially stable portion of the second pulse. | 10-16-2014 |
Eric Menzer, Malden, MA US
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20140136444 | SYSTEM AND METHOD FOR DE-RISKING A PENSION FUND - A system for de-risking a pension fund, the system including: an input module for receiving asset class forecasts; a modeling module for modeling a plurality of portfolios based on the asset class forecasts to provide a de-risking framework; an asset mix module for receiving an asset mix for each of the model portfolios based on the de-risking framework; a database for storing data related to the asset class forecasts, the model portfolios, and asset mix; a processor configured to monitor the model portfolios for performance within the de-risking framework by: calculating an indicator of funded status volatility; comparing the indicator with a benchmark; and reporting the result. In particular, the indicator of funded status volatility is a liability tracking error and the benchmark is the liability tracking error of a conventional or standard pension portfolio. | 05-15-2014 |
20140236863 | SYSTEM AND METHOD FOR DE-RISKING A PENSION FUND - A system for de-risking a pension fund, the system including: an input module for receiving asset class forecasts; a modeling module for modeling a plurality of portfolios based on the asset class forecasts to provide a de-risking framework; an asset mix module for receiving an asset mix for each of the model portfolios based on the de-risking framework; a database for storing data related to the asset class forecasts, the model portfolios, and asset mix; a processor configured to monitor the model portfolios for performance within the de-risking framework by: calculating an indicator of funded status volatility; comparing the indicator with a benchmark; and reporting the result. In particular, the indicator of funded status volatility is a liability tracking error and the benchmark is the liability tracking error of a conventional or standard pension portfolio. | 08-21-2014 |
Jasmin Menzer, Monheim DE
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20130012423 | Use Of Cleaning Agents Containing Microemulsions That Contain Wax - The invention relates to the use of microemulsions, containing (a) at least one alkyl(oligo)glycoside, (b) at least one co-surfactant different from (a), (c) at least one water-insoluble organic oil component, (d) at least one wax, and (e) water, to produce cleaning agents, and aqueous hand dishwashing detergents, containing anionic and amphoteric surfactants and, in amounts from 0.2 to 10 wt % relative to the total weight of the hand dishwashing detergents, a microemulsion according to the description in claim | 01-10-2013 |
20130149272 | Shampoo Composition Having Improved Care Properties - The invention relates to a cosmetic preparation that contains (a) at least one surfactant selected from anionic, zwitterionic or amphoteric surfactants, (b) a microemulsion and (c) at least one cationic polymer. | 06-13-2013 |
Jasmin Menzer, Langenfeld DE
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20100247588 | Method For Preparing Finely Divided Emulsions - Finely divided emulsions, preferably for use in cosmetic preparations can be produced by first producing a microemulsion which contains at least 10-20% by weight of an alkyl(oligo)glycoside of general formula R | 09-30-2010 |
20110142778 | Shampoo Composition Having Improved Care Properties - The invention relates to a cosmetic preparation that contains (a) at least one surfactant selected from anionic, zwitterionic or amphoteric surfactants, (b) a microemulsion and (c) at least one cationic polymer. | 06-16-2011 |
Lars Menzer, Santa Cruz, CA US
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20080231498 | Symmetrical Multi-Path Method For Determining the Distance Between Two Transmitter-Receivers - The invention relates to a symmetrical multi-path method for determining the spatial distance between two transmitter-receivers. Both transmitter-receivers set off at least one signal round in each case. A signal round comprises the steps: | 09-25-2008 |
Reinhard Menzer, Juelich DE
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20100172813 | DEVICE AND METHOD FOR REDUCING CO2-EMISSIONS FROM THE WASTE GASES OF COMBUSTION PLANTS - A method for separating carbon dioxide from a flue gas using a membrane (membrane module) is characterized in that the flue gas is at temperatures above the condensation point of the water vapor before entering the membrane separation stage. In this way, condensation of any potentially entrained water vapor out of the flue gas is avoided, so as to consistently prevent clogging of the membrane pores. The high temperatures can be achieved in different ways. The temperature of the flue gas can easily be increased to the necessary temperatures by way of an upstream heat exchanger or a burner. A compressor, which is connected upstream of the membrane module and also advantageously increases the CO | 07-08-2010 |
Reinhard Menzer, Simmerath DE
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20110162382 | IGCC POWER PLANT HAVING FLUE GAS RECIRCULATION AND FLUSHING GAS - Disclosed is a method for operating an IGCC power plant, wherein the coal gas from a gasifier, comprising CO and hydrogen, is supplied to at least one shift stage, wherein this is converted primarily into CO | 07-07-2011 |
20120060728 | Power station and method for operating the same - A combustion system comprising a burner and a combustion chamber, is connected by way of a line to a membrane unit having a high-temperature membrane for extracting the combustion oxygen from the air, the membrane unit having a feed line for a flushing gas on the permeate side. The combustion system further comprises a circulation element for recirculated flue gas, a heat exchanger being disposed upstream of the membrane unit inside the flue gas line. Disclosed is a method for operating this combustion system, in which carbon-containing fuel is burned in an oxygen-flue gas atmosphere, and in which the oxygen for combustion is produced from air by means of a membrane unit comprising a high-temperature membrane, and in which the flue gas is in part recirculated. Disclosed are the steps of first cooling the recirculated flue gas, optionally for a flue gas scrubbing process, subsequently reheating the cooled flue gas to ensure the necessary operating temperature of the membrane, the heating energy being extracted by way of a heat exchange with the flue gas having the corresponding temperature level of the combustion process, and feeding the flue gas heated in this manner to the membrane unit as a flushing gas. | 03-15-2012 |
Sophie Gisele Menzer, Lakewood, CO US
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20100297537 | ELECTROCHEMICAL CELL COMPRISING IONICALLY CONDUCTIVE MEMBRANE AND POROUS MULTIPHASE ELECTRODE - An electrochemical cell in accordance with one embodiment of the invention includes a first electrode containing a first phase intermixed with a second phase and a network of interconnected pores. The first phase contains a ceramic material and the second phase contains an electrically conductive material providing an electrically contiguous path through the first electrode. The electrochemical cell further includes a second electrode containing an alkali metal. A substantially non-porous alkali-metal-ion-selective ceramic membrane, such as a dense Nasicon, Lisicon, Li β″-alumina, or Na β″-alumina membrane, is interposed between the first and second electrodes. | 11-25-2010 |